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Cooperativity and communication between the active sites of the dimeric SARS-CoV-2 main protease

SCIENCE ADVANCES. 2026-01; 
Sarah N Zvornicanin, Ala M Shaqra, Julia Flynn, Lauren E Intravaia, Heidi Carias Martinez, Weiping Jia, Devendra Kumar Gupta, Stephanie Moquin, Dustin Dovala, Daniel N Bolon, Brian A Kelch, Celia A Schiffer, Nese Kurt Yilmaz Department of Biochemistry and Molecular Biotechnology, University of Massachusetts Chan Medical School
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Molecular Biology Reagents To determine the enzyme kinetic parameters of Mpro variants, 75 to 1000 nM enzyme was added to a diluted series of 0 to 200 μM FRET substrate [Dabcyl-KTSAVLQSGFRKM-Glu(Edans) (GenScript)] Get A Quote

摘要

The coronaviral main protease (Mpro) has been the subject of various biochemical and structural studies and a drug target against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infections. SARS-CoV-2 Mpro is active as a dimer, but despite apparent cooperativity in catalytic activity, how the two distal active sites communicate and modulate binding and/or catalysis is unclear. Here, we have investigated the interplay between cooperativity, dimerization, and substrate cleavage in SARS-CoV-2 Mpro through a combination of enzymatic assays, crystal structures, and protein characterization. To disentangle the contribution of each active site to the observed enzymatic activity, we developed a cleavage as... More

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